Suppr超能文献

疏水性青霉素的酶促合成。

Enzymatic synthesis of hydrophobic penicillins.

作者信息

Luengo J M

机构信息

Departamento de Bioquímica y Biología Molecular, Facultades de Biología y Veterinaria, Universidad de León.

出版信息

J Antibiot (Tokyo). 1995 Nov;48(11):1195-212. doi: 10.7164/antibiotics.48.1195.

Abstract

Our knowledge of the enzymes and genes involved in the biosynthesis of beta-lactam antibiotics has increased notably in the last decade. The purification to homogeneity of some of these proteins as well as their biochemical characterization has allowed some of them to be used for synthesizing many different penicillins and cephalosporin-like products in vitro. In this report we describe the most important advances in this field, placing special emphasis on the enzymatic synthesis of hydrophobic penicillins. The use of purified acyl-CoA: 6-aminopenicillanic acid (6-APA) acyltransferase (AT) from Penicillium chrysogenum and several acyl-CoA ligases obtained from different microbial origins has led to the reproduction "in vitro" of the last step involved in in penicillin biosynthesis. By coupling these enzymatic systems (AT and acyl-CoA ligases) an impressive number of beta-lactam antibiotics has been obtained. Thus, most of the known natural penicillins, many of the semisynthetic variants and others, which until now can only be obtained chemically, have been synthesized enzymatically from their natural precursors. Furthermore, the use of heterologous proteins in coupled systems has opened a new and exciting field in beta-lactam antibiotic research, lending new perspectives to the traditional methodology followed by antibiotic fermentation industries.

摘要

在过去十年中,我们对β-内酰胺抗生素生物合成中涉及的酶和基因的了解显著增加。其中一些蛋白质的纯化至同质以及它们的生化特性表征,使得其中一些蛋白质能够用于体外合成许多不同的青霉素和头孢菌素类产品。在本报告中,我们描述了该领域最重要的进展,特别强调了疏水性青霉素的酶促合成。使用来自产黄青霉的纯化酰基辅酶A:6-氨基青霉烷酸(6-APA)酰基转移酶(AT)以及从不同微生物来源获得的几种酰基辅酶A连接酶,已实现了青霉素生物合成最后一步的“体外”重现。通过偶联这些酶系统(AT和酰基辅酶A连接酶),已获得了数量可观的β-内酰胺抗生素。因此,大多数已知的天然青霉素、许多半合成变体以及其他迄今为止只能通过化学方法获得的物质,都已从其天然前体通过酶促合成得到。此外,在偶联系统中使用异源蛋白质为β-内酰胺抗生素研究开辟了一个全新且令人兴奋的领域,为抗生素发酵行业遵循的传统方法带来了新的视角。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验